期刊文献+

基于星座点特征的OFDM残留频偏跟踪算法 被引量:4

A Residual Carrier Frequency Offset Tracking Algorithm Based on Constellation Characteristics for OFDM systems
下载PDF
导出
摘要 残留频偏会导致星座点发生旋转,而且这种旋转与时间有关,时间越长,旋转越大。若残留频偏长时间得不到校正,将会使星座点旋转到其他象限从而出现判决错误,使系统的性能急剧恶化。针对这个问题,提出了一种基于星座点特征的残留频偏跟踪算法。该算法要求在信道估计之后完成,并假定一个OFDM帧内的信道频率响应保持不变。该算法包括三个步骤,首先将每个OFDM符号的星座点划分为四个子集,然后对每个子集的均值求相位角获得相位误差,最后经环路滤波器输出一个校正量补偿时域频偏。由于残留频偏估计值的提取充分利用了所有数据子载波信息,并对每个子集进行了求均值处理,所以有效的改善了环路的输入信噪比。它适用于子载波为QPSK或QAM调制的OFDM系统,不同的子载波调制方式跟踪范围不同,最大跟踪范围为±0.05个子载波间隔。仿真表明:新算法性能要优于基于循环前缀的算法,与基于导频的跟踪算法性能相当。 The residual frequency offset (RFO) may lead to constellations rotation, and this rotation is related to the time. The longer the time is, the larger the rotation will be. If the RFO cannot be corrected for long time, the decision error may occur because of constellations rotating to other quadrant, which will severely degrade the performance of OFDM sys- tems. In order to correct the RFO, this paper proposes a RFO tracking algorithm based on constellation characteristics for OFDM systems. Based on the assumption that the channel frequency response has been estimated and keeps constant within one frame, the proposed algorithm is accomplished by using the properties of constellations rotation. At first, con- stellations of every OFDM symbol are divided into four subsets, and then phase error is extracted by solving phase angle of every subset' s average. Finally, the frequency offset compensation in the domain is achieved by using a two-tap loop fil- ter. The input SNR of the loop may be improved effectively, because the CFO estimation is performed by using all data subcarriers and averaging every subset. With proper loop parameters, a CFO less than 5% of the subcarrier spacing may be well tracked for OFDM systems with QPSK modulation. While for OFDM systems using QAM modulation, the CFO tracking range may be reduced to +0. O1 of subcarrier spacing. The simulation results show that the tracking performance of the proposed algorithm is better than the one of ML estimator based on cyclic prefix, and is very close to that of estima- tor based on pilot tones.
出处 《信号处理》 CSCD 北大核心 2012年第2期206-212,共7页 Journal of Signal Processing
基金 国家自然科学基金-中国工程物理研究院联合基金(NSAF)资助项目(10876103)
关键词 正交频分复用 残留频偏 盲估计 跟踪 星座点 Orthogonal frequency division multiplexing residual frequency offset blind estimation tracking constellation
  • 相关文献

参考文献14

二级参考文献53

  • 1Yao Y,Giannakis G B.Blind carrier frequency offset estimation in SISO,MIMO,and multiuser OFDM systems[J].IEEE Trans Commun,2005,53(1):173-183. 被引量:1
  • 2Talbot S L,Boroujeny B F.Spectral method of blind carrier tracking for OFDM[J].IEEE Trans Signal Process,2008,56(7):2706-2717. 被引量:1
  • 3Gao F,Nallanathan A.Blind maximum likelihood CFO estimation for OFDM systems via polynomial rooting[J].IEEE Signal Processing Lett,2006,13(2):73-76. 被引量:1
  • 4Ghogho M,Swami A,Giannakis G B.Optimized null-subcarrier selection for CFO estimation in OFDM over frequency-selective fading channels[C].Proceedings of IEEE GLOBECOM,2001,202-206. 被引量:1
  • 5Meyrs M H,Franks L.Joint carrier phase and symbol timing recovery for PAM systems[J].IEEE Trans Commun,1980,28(8):1121-1129. 被引量:1
  • 6Pollet T,Bladel V M,Moeneclaey M.BER sensitivity of OFDM systems to carrier frequency offset and wiener phase noise[J].IEEE Trans Commun,1995,43(2):191-193. 被引量:1
  • 7Ma X,Tepedelenlioglu C,Giannakis G B.Nondata-aided carrier offset estimators for OFDM with null subcarriers:identifiability,algorithms,and performance[J].IEEE J Select Areas Commun,2001,19(12):2504-2515. 被引量:1
  • 8Zeng X N,Ghrayeb A.A blind carrier frequency offset estimation scheme for OFDM systems with constant modulus signaling[J].IEEE Trans Commun,2008,56(7):1032-1037. 被引量:1
  • 9Van de Beek J J, Sandell M. ML Estimation of Timing and Frqeuency Offset in OFDM Systems[J]. IEEE Trans on Signal Processing, 1997, 45(7): 1800-1805. 被引量:1
  • 10B(o)lcskei H. Blind Estimation of Symbol Timing and Carrier Frequen cyOffset in Pulse Shaping OFDM Systems[A].Proc IEEE ICASSP-99:Vol5[C].Phoenix:IEEE,1999.2749-2752. 被引量:1

共引文献14

同被引文献43

  • 1张盛耀.软件无线电中用于采样速率转换的Farrow结构滤波器设计[J].广西通信技术,2007(1):20-22. 被引量:6
  • 2ZOU W Y,WU Y Y. COFDM : an overview [J]. IEEE Transac-tions on Broadcasting,1995,41(3) : 1-8. 被引量:1
  • 3YOU Y H, KIM J B , SONG H K. Pilot-assisted fine frequencysynchronization for OFDM-based DVB receivers [J]. IEEETransactions on Broadcasting, 2009,55(3): 674-678. 被引量:1
  • 4CHOI J W, LEE J W, ZHAO Q, et al. Joint ML estimation offrame timing and carrier frequency offset for OFDM systemsemploying time - domain repeated preamble [J]. IEEE Transac-tions on Wireless Communications, 2010, 9(1): 311-317. 被引量:1
  • 5[美]崔保延.GPS软件接收机基础[M].陈军,译.北京:电子丁业出版社,2001. 被引量:3
  • 6HARRIS Fred J. Performance and design of Farrow filter used forarbitrary resampling [J]. Digital Signal Processing Proceedings,1997,13(2): 595-597. 被引量:1
  • 7YU Yi-Hsin, LIU Hsuan-Yu, HSU Terng-Yin, et al. A jointscheme of decision-directed channel estimation and weighted-average phase error tracking for OFDM WLAN systems [C]//2004 IEEE Asia-Pacific Conference on Circuits and Systems.Tainan; IEEE,2004,2: 6-9. 被引量:1
  • 8赵海龙,张健,周劼,等.基于OFDM的无人机遥测系统设计[C]//第十三届全国遥感遥测遥控学术年会.2012. 被引量:1
  • 9Zhao Hailong, Zhang Jian, Zhou Jie, et al. The application of OFDM in UAV telemetry[C]//Proceedings of the 26thConference of Spacecraft TT&C Technology of China. 2012. 被引量:1
  • 10Zhao Hailong, Liu Youjiang, Zhang Jian, et al. A novel joint synchronization algorithm for OFDM systems based on singletraining symbol[J]. International Journal of Digital Content Technology and its Applications (JDCTA), 2011,5(5):217-225. 被引量:1

引证文献4

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部